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Design and evaluation of vascular interventional robot system for complex coronary artery lesions. | LitMetric

Design and evaluation of vascular interventional robot system for complex coronary artery lesions.

Med Biol Eng Comput

Hebei Provincial Key Laboratory of Parallel Robot and Mechatronic System, Yanshan University, Qinhuangdao, 066004, China.

Published: June 2023

AI Article Synopsis

  • - The paper presents a new vascular interventional robot designed to assist doctors with complex coronary lesions, addressing current limitations in existing robotic systems.
  • - This robot features a unique design that allows for collaborative delivery of multiple instruments and incorporates a haptic force feedback mechanism to reduce surgical risks.
  • - Experimental results demonstrate the robot's ability to accurately measure resistance during instrument delivery and effectively provide force feedback, proving the system's feasibility and effectiveness in clinical settings.

Article Abstract

At present, most vascular intervention robots cannot cope with the more common coronary complex lesions in the clinic. Moreover, the lack of effective force feedback increases the risk of surgery. In this paper, a vascular interventional robot that can collaboratively deliver multiple interventional instruments has been developed to assist doctors in the operation of complex lesions. Based on the doctor's skills and the delivery principle of interventional instruments, the main and slave manipulators of the robot system are designed. Haptic force feedback is generated through resistance measuring mechanism and active drag system. In addition, a force feedback control strategy based on force-velocity mapping is proposed to realize the continuous change of force and avoid vibration. The proposed robot system was evaluated through a series of experiments. The experimental results show that the system can accurately measure the delivery resistance of interventional instruments, and provide haptic force feedback to doctors. The capability of the system to collaboratively deliver multiple interventional instruments is effective. Therefore, it can be considered that the robot system is feasible and effective.

Download full-text PDF

Source
http://dx.doi.org/10.1007/s11517-023-02775-5DOI Listing

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